ArticleThe Biochemical journal1990
Potentiation of stimulus-induced insulin secretion in protein kinase C-deficient RINm5F cells.
Article in The Biochemical journal, 1990. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed, 28 citations in OpenAlex.
- Inhibition of glucose-stimulated insulin secretion by Ro 31-8220, a protein kinase C inhibitor.Endocrine · 1995Article
- Effect of disruption of actin filaments by Clostridium botulinum C2 toxin on insulin secretion in HIT-T15 cells and pancreatic islets.Molecular biology of the cell · 1994Article
- Polymyxin B has multiple blocking actions on the ATP-sensitive potassium channel in insulin-secreting cells.Pflugers Archiv : European journal of physiology · 1994Article
- Cross-talk between muscarinic- and adenosine-receptor signalling in the regulation of cytosolic free Ca2+ and insulin secretion.The Biochemical journal · 1993Article
- Intracellular pH and the stimulus-secretion coupling in insulin-producing RINm5F cells.The Biochemical journal · 1992Article
- Activation of voltage-sensitive Ca2+ currents by vasopressin in an insulin-secreting cell line.The Journal of membrane biology · 1991Article
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5 authors at 1 institution in 1 country.
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No grant is acknowledged in the PubMed record.
Abstract
The role of protein kinase C (PKC) in stimulus recognition and insulin secretion was investigated after long-term (24 h) treatment of RINm5F cells with phorbol 12-myristate 13-acetate (PMA). Three methods revealed that PKC was no longer detectable, and PMA-induced insulin secretion was abolished. Such PKC-deficient cells displayed enhanced insulin secretion (2-6-fold) in response to vasopressin and carbachol (activating phospholipase C) as well as to D-glyceraldehyde and alanine (promoting membrane depolarization and voltage-gated Ca2+ influx). Insulin release stimulated by 1-oleoyl-2-acetylglycerol (OAG) was also greater in PKC-deficient cells. OAG caused membrane depolarization and raised the cytosolic Ca2+ concentration ([Ca2+]i), both of which were unaffected by PKC down-regulation. Except for that caused by vasopressin, the secretagogue-induced [Ca2+]i elevations were similar in control and PKC-depleted cells. The [Ca2+]i rise evoked by vasopressin was enhanced during the early phase (observed both in cell suspensions and at the single cell level) and the stimulation of diacylglycerol production was also augmented. These findings suggest more efficient activation of phospholipase C by vasopressin after PKC depletion. Electrically permeabilized cells were used to test whether the release process is facilitated after long-term PMA treatment. PKC deficiency was associated with only slightly increased responsiveness to half-maximally (2 microM) but not to maximally stimulatory Ca2+ concentrations. At 2 microM-Ca2+ vasopressin caused secretion, which was also augmented by PMA pretreatment. The difference between intact and permeabilized cells could indicate the loss in the latter of soluble factors which mediate the enhanced secretory responses. However, changes in cyclic AMP production could not explain the difference. These results demonstrate that PKC not only exerts inhibitory influences on the coupling of receptors to phospholipase C but also interferes with more distal steps implicated in insulin secretion.
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